Wu Jingyu, Issadore David A, Lee Daeyeon
Department of Chemical and Biomolecular Engineering, University of Pennsylvania, Philadelphia, Pennsylvania 19104, United States.
Department of Bioengineering, University of Pennsylvania, Philadelphia, Pennsylvania 19104, United States.
ACS Appl Mater Interfaces. 2023 Feb 7. doi: 10.1021/acsami.2c19937.
Controlling the surface wetting properties of channels is crucial to the robust and reliable performance of microfluidic devices. Spatially patterned hydrophobic/hydrophilic microchannels have found utility across various applications, notably in the generation of higher-order emulsions. Unfortunately, the patterning of surface wettability currently requires multistep processes with limited spatial resolution, making it impractical for many applications. In this work, we take inspiration from soft lithography and have developed a new replica mold fabrication technique wherein both the channel geometry and surface wettability are transferred from the mold to the replica. In this approach, the mold is a silicon wafer with lithographically defined features etched into its surface to define the channel geometry and lithographically defined patterns of hydrophobic silanes to define surface wetting properties. The replica is a co-polymer network of PFPE-PEG, for which PFPE can be locally enriched by the mold's patterned silanes to define the spatially patterned wetting properties. We demonstrated the utility of this approach by fabricating a PFPE-PEG-based microfluidic chip, with hydrophobic/hydrophilic patterned microchannels, to generate double emulsions.
控制通道的表面润湿性对于微流控设备的稳健可靠性能至关重要。具有空间图案化的疏水/亲水微通道已在各种应用中得到应用,尤其是在高阶乳液的生成方面。不幸的是,目前表面润湿性的图案化需要多步工艺且空间分辨率有限,这使得它在许多应用中不切实际。在这项工作中,我们从软光刻技术中获得灵感,开发了一种新的复制模具制造技术,其中通道几何形状和表面润湿性都从模具转移到复制品上。在这种方法中,模具是一个硅片,其表面蚀刻有光刻定义的特征以定义通道几何形状,以及光刻定义的疏水性硅烷图案以定义表面润湿性。复制品是PFPE-PEG的共聚物网络,PFPE可以通过模具的图案化硅烷在局部富集,以定义空间图案化的润湿性。我们通过制造具有疏水/亲水图案化微通道的基于PFPE-PEG的微流控芯片来生成双重乳液,证明了这种方法的实用性。